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医学与生物学背景下光子相互作用截面数据综述。

Review of photon interaction cross section data in the medical and biological context.

作者信息

Hubbell J H

机构信息

National Institute of Standards and Technology, Ionizing Radiation Division, Gaithersburg, MD 20899-8463, USA.

出版信息

Phys Med Biol. 1999 Jan;44(1):R1-22. doi: 10.1088/0031-9155/44/1/001.

Abstract

The probability of a photon (x-ray, gamma-ray, bremsstrahlung, etc) of a given energy E undergoing absorption or scattering when traversing a layer of material Z can be expressed quantitatively in terms of a linear attenuation coefficient mu (cm(-1)). Since mu is dependent on the material's density, rho (g cm(-3)), which can be variable, the quantity usually tabulated is the mass attenuation coefficient mu/rho (cm2 g(-1)) in which the dependence on the density has been removed. Mu/rho, in turn, can be obtained as the sum of the different types of possible interactions of photons with atoms of the material. For photon energies below 1 MeV the major interaction processes to be considered are incoherent (Compton) scattering, coherent (Rayleigh) scattering and atomic photoeffect absorption. Above 1 MeV one must also include nuclear-field pair production and atomic-field (triplet) production, and above 5 MeV one in principle should include photonuclear absorption, although the latter is neglected in data tabulations up to the present time. This review includes a selective history of measurements and theory relating to mu/rho from the turn of the century up to the present time, and is intended to provide a basis for further calculations and critical tabulations of photon cross section data, particularly as required by users in radiation medicine and biology. The mass energy-absorption coefficient mu(en)/rho is also briefly discussed.

摘要

能量为E的给定光子(X射线、γ射线、轫致辐射等)在穿过一层物质Z时发生吸收或散射的概率,可以用线性衰减系数μ(cm⁻¹)定量表示。由于μ取决于物质的密度ρ(g/cm³),而ρ可能是可变的,所以通常列表给出的量是质量衰减系数μ/ρ(cm²/g),其中对密度的依赖性已被消除。μ/ρ又可以通过光子与物质原子的不同类型可能相互作用的总和得到。对于能量低于1 MeV的光子,要考虑的主要相互作用过程是非相干(康普顿)散射、相干(瑞利)散射和原子光电效应吸收。能量高于1 MeV时,还必须包括核场对产生和原子场(三重态)产生,能量高于5 MeV时,原则上应包括光核吸收,不过直到目前的数据列表中都忽略了后者。这篇综述包括了从世纪之交到现在与μ/ρ相关的测量和理论的选择性历史,旨在为光子截面数据的进一步计算和关键列表提供基础,特别是辐射医学和生物学领域的用户所要求的那样。还简要讨论了质量能量吸收系数μ(en)/ρ。

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